首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Amine-hydrogen halide complexes: Experimental electric dipole moments and a theoretical decomposition of dipole moments and binding energies
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Amine-hydrogen halide complexes: Experimental electric dipole moments and a theoretical decomposition of dipole moments and binding energies

机译:胺-卤化氢络合物:实验电偶极矩以及偶极矩和结合能的理论分解

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摘要

The Stark effect has been observed in the rotational spectra of several gas-phase amine-hydrogen halide complexes and the following electric dipole moments have been determined: (H3N)-N-15-(HCl)-Cl-35 ( 4.05865 +/- 0.00095 D), (CH3)(3) N-15-(HCl)-Cl-35 (7.128 +/- 0.012 D), (H3N)-N-15-(HBr)-Br-79 ( 4.2577 +/- 0.0022 D), and (CH3)(3)N-15-(HBr)-Br-79 (8.397 +/- 0.014 D). Calculations of the binding energies and electric dipole moments for the full set of complexes R-n(CH3)(3-n)N-HX (n = 0-3; X = F, Cl, Br) at the MP2/aug-cc-pVDZ level are also reported. The block localized wave function (BLW) energy decomposition method has been used to partition the binding energies into contributions from electrostatic, exchange, distortion, polarization, and charge-transfer terms. Similarly, the calculated dipole moments have been decomposed into distortion, polarization, and charge-transfer components. The complexes studied range from hydrogen-bonded systems to proton-transferred ion pairs, and the total interaction energies vary from 7 to 17 kcal/mol across the series. The individual energy components show a much wider variation than this, but cancellation of terms accounts for the relatively narrow range of net binding energies. For both the hydrogen-bonded complexes and the proton-transferred ion pairs, the electrostatic and exchange terms have magnitudes that increase with the degree of proton transfer but are of opposite sign, leaving most of the net stabilization to arise from polarization and charge transfer. In all of the systems studied, the polarization terms contribute the most to the induced dipole moment, followed by smaller but still significant contributions from charge transfer. A significant contribution to the induced moment of the ion pairs also arises from distortion of the HX monomer.
机译:在几种气相胺-卤化氢配合物的旋转光谱中观察到了斯塔克效应,并确定了以下电偶极矩:(H3N)-N-15-(HCl)-Cl-35(4.05865 +/- 0.00095 D),(CH3)(3)N-15-(HCl)-Cl-35(7.128 +/- 0.012 D),(H3N)-N-15-(HBr)-Br-79(4.2577 +/- 0.0022 D)和(CH3)(3)N-15-(HBr)-Br-79(8.397 +/- 0.014 D)。在MP2 / aug-cc-处计算整套配合物Rn(CH3)(3-n)N-HX(n = 0-3; X = F,Cl,Br)的全套结合能和电偶极矩也报道了pVDZ水平。块局部波函数(BLW)能量分解方法已用于将结合能划分为静电,交换,畸变,极化和电荷转移项的贡献。同样,计算出的偶极矩已分解为畸变,极化和电荷转移分量。研究的络合物范围从氢键系统到质子转移离子对,整个系列的总相互作用能从7到17 kcal / mol不等。各个能量分量显示出比此更大的变化,但是项的取消说明了净结合能的范围相对狭窄。对于氢键结合的络合物和质子转移的离子对,静电和交换项的量级随质子转移的程度而增加,但符号相反,从而使大部分的净稳定作用源于极化和电荷转移。在所有研究的系统中,极化项对感应偶极矩的贡献最大,其次是电荷转移产生的较小但仍很重要的贡献。 HX单体的变形也会对离子对的感应矩产生重大影响。

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